It produces ionized particles as a byproduct.Ī more expensive and hot plasma, it is 4,250℃ (~7,682℉). It produces ionized particles as a byproduct.Īnother cooler plasma, but a bit hotter than Deuterium-Hydrogen. It's also infinite.Ī plasma that is slightly cooler than the Deuterium - Tritium plasma with a temperature of 3,480℃ (~6,296℉). It produces ionized particles as a byproduct. It produces ionized particles as a byproduct.Ī cooler plasma, it is only 2,500℃ (~4,532℉). It will produce ~36 GHE, as compared to the old reactor's 51.2 GHE. The default plasma is Deuterium - Tritium plasma, which is 3,500℃ (~6,332℉). 1 large tank of deuterium and 1 large tank of tritium) and it does not take into consideration the power needed for the magnets and plasma heater. It is calculated using 1 large tank of both fuels (e.g. Has a nice vaporwave blue color in the reactor.ĭifferent plasmas give different heats. It requires 16 Tungsten blocks, 16 High-Speed Steel blocks, 48 neutron reflectors, and 48 Chlorophyte powders. It has a 4,500℃ (~8,132℉) melting point and 2,160,000 durability, twice as much as tungsten. It requires 16 Desh blocks, 16 Cobalt blocks, and 96 Saturnite plates. It requires 32 Tungsten Blocks and 96 neutron reflectors. They give the internals of the reactor different colors. Stronger ones have higher melting points and (usually) higher durabilities. The Fusion Reactor needs 4 things in order to run: Power for the magnetic containment, water (an obscene amount of it), a reactor blanket (think the tungsten lining from the old fusion reactor), and of course plasma.įusion reactor blankets essentially act as heat shielding for the reactor internally. Unlike most other multiblock machines, you don't need the Multiblock Marker, the core component itself creates the hologram. If you constructed the machine correctly, it will turn into a 3D model and function similarly to the Assembly Machine or Chemical Plant.
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